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IRF3 reduces adipose thermogenesis via ISG15


IRF3 reduces adipose thermogenesis via ISG15-mediated ... - PubMed

Adipose thermogenesis is repressed in obesity, reducing the homeostatic capacity to compensate for chronic overnutrition.

IRF3 reduces adipose thermogenesis via ISG15-mediated ... - JCI

Here we showed that the innate immune transcription factor IRF3 is a strong repressor of thermogenic gene expression and oxygen consumption in adipocytes.

IRF3 reduces adipose thermogenesis via ISG15-mediated ...

Here we showed that the innate immune transcription factor IRF3 is a strong repressor of thermogenic gene expression and oxygen consumption in adipocytes.

IRF3 reduces adipose thermogenesis via ISG15-mediated ... - JCI

IRF3 reduces adipose thermogenesis via ISG15-mediated reprogramming of glycolysis. Shuai Yan, Rasheed Ahmad, Evan D. Rosen.

IRF3 reduces adipose thermogenesis via ISG15-mediated ...

IRF3 reduces adipose thermogenesis via ISG15-mediated reprogramming of glycolysis Available Online. Send to. Citation. EndNote. Export BibTeX. Export RIS.

IRF3 reduces adipose thermogenesis via ISG15-mediated ...

Adipose thermogenesis is repressed in obesity, reducing the homeostatic capacity to compensate for chronic overnutrition. Inflammation inhibits adipose ...

IRF3 reduces adipose thermogenesis via ISG15-mediated ...

Request PDF | IRF3 reduces adipose thermogenesis via ISG15-mediated reprogramming of glycolysis | Adipose thermogenesis is repressed in obesity, ...

IRF3 reduces adipose thermogenesis via ISG15-mediated ...

IRF3 reduces adipose thermogenesis via ISG15-mediated reprogramming of glycolysis Available Online. Send to. Export BibTeX. Export RIS. RefWorks. Print.

IRF3 reduces adipose thermogenesis via ISG15-mediated ... - CoLab

IRF3 reduces adipose thermogenesis via ISG15-mediated reprogramming of glycolysis. Shuai Yan 1. ,. Manju Kumari 2. ,. Haopeng Xiao 3.

IRF3 reduces adipose thermogenesis via ISG15-mediated ...

Article on IRF3 reduces adipose thermogenesis via ISG15-mediated reprogramming of glycolysis, published in Journal of Clinical Investigation ...

Inflammation causes insulin resistance in mice via interferon ...

In addition to repressing thermogenesis, IRF3 in adipocytes ... IRF3 reduces adipose thermogenesis via ISG15-mediated reprogramming of glycolysis.

Publications | Evan Rosen Lab

“IRF3 Reduces Adipose Thermogenesis via ISG15-Mediated Reprogramming of Glycolysis.”. The Journal of Clinical Investigation 131 (7). https://doi.org/10.1172 ...

IRF3 reduces adipose thermogenesis via ISG15 ... - Altmetric

IRF3 reduces adipose thermogenesis via ISG15-mediated reprogramming of glycolysis. Overview of attention for article published in Journal of Clinical ...

The diverse repertoire of ISG15: more intricate than initially thought

IRF3 reduces adipose thermogenesis via ISG15-mediated reprogramming of glycolysis. J. Ciln. Invest. 131, e144888 (2021). CAS Google Scholar.

Inflammation causes insulin resistance via interferon regulatory ...

(2021) 2021. “IRF3 Reduces Adipose Thermogenesis via ISG15-Mediated Reprogramming of Glycolysis.”. The Journal of Clinical Investigation 131 (7) ...

Inflammation causes insulin resistance via interferon regulatory ...

IRF3 reduces adipose thermogenesis via ISG15-mediated reprogramming of ... IRF3 decreases FAHFAs in adipocytes. a, Quantification of. 1191.

ISG15 Is a Novel Regulator of Lipid Metabolism during Vaccinia ...

IRF3 reduces adipose thermogenesis via ISG15-mediated reprogramming of glycolysis. J Clin Invest 131:e144888. View · PubMed · Web of Science.

036261 - IRF3-2D Strain Details - The Jackson Laboratory

IRF3 reduces adipose thermogenesis via ISG15-mediated reprogramming of glycolysis. ... When using the IRF3-2D mouse strain in a publication ...

Irf3 Targeted Allele Detail MGI Mouse (MGI:6695702)

Original: J:304593 Yan S, et al., IRF3 reduces adipose thermogenesis via ISG15-mediated reprogramming of glycolysis. J Clin Invest. 2021 Apr 1;131(7). All: 3 ...

IRF3 promotes adipose inflammation and insulin resistance and ...

Inguinal adipose tissue has the potential to develop increased numbers of UCP1+ beige adipocytes, which dissipate energy via enhanced thermogenesis (31).